用于自维持传感器的66pW断续开关电容能量采集器。

Xiao Wu, Yao Shi, Supreet Jeloka, Kaiyuan Yang, Inhee Lee, Dennis Sylvester, David Blaauw
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引用次数: 3

摘要

我们提出了一种用于开关电容DC-DC变换器的不连续收集方法,使超低功耗能量收集成为可能。通过在输入电容上缓慢积累电荷,然后在突发模式下将其转移到电池中,DC-DC转换器中的开关和泄漏损耗可以与非理想MPPT操作造成的损耗进行最佳权衡。该收割机采用15pW模式控制器、自动转换比率调制器和移动电荷泵,用于模式切换时的低启动能量。在180nm CMOS中,在最小输入功率为66pW的情况下,从113pW到1.5μW的端到端效率达到了>40%,比现有的超低功率采集器提高了>10倍。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

A 66pW Discontinuous Switch-Capacitor Energy Harvester for Self-Sustaining Sensor Applications.

A 66pW Discontinuous Switch-Capacitor Energy Harvester for Self-Sustaining Sensor Applications.

A 66pW Discontinuous Switch-Capacitor Energy Harvester for Self-Sustaining Sensor Applications.

A 66pW Discontinuous Switch-Capacitor Energy Harvester for Self-Sustaining Sensor Applications.

We present a discontinuous harvesting approach for switch capacitor DC-DC converters that enables ultra-low power energy harvesting. By slowly accumulating charge on an input capacitor and then transferring it to a battery in burst-mode, switching and leakage losses in the DC-DC converter can be optimally traded-off with the loss due to non-ideal MPPT operation. The harvester uses a 15pW mode controller, an automatic conversion ratio modulator, and a moving sum charge pump for low startup energy upon a mode switch. In 180nm CMOS, the harvester achieves >40% end-to-end efficiency from 113pW to 1.5μW with 66pW minimum input power, marking a >10× improvement over prior ultra-low power harvesters.

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